source: anuga_work/production/perth/build_perth.py @ 5360

Last change on this file since 5360 was 5360, checked in by sexton, 15 years ago

updates to Perth polygons and scripts by Kristy

File size: 7.4 KB
Line 
1"""Script for running tsunami inundation scenario for Perth, WA, Australia.
2
3Source data such as elevation and boundary data is assumed to be available in
4directories specified by project.py
5The output sww file is stored in project.output_time_dir
6
7The scenario is defined by a triangular mesh created from project.polygon,
8the elevation data and a simulated submarine landslide.
9
10Ole Nielsen and Duncan Gray, GA - 2005 and Jane Sexton, Nick Bartzis, GA - 2006
11"""
12
13#------------------------------------------------------------------------------
14# Import necessary modules
15#------------------------------------------------------------------------------
16
17# Standard modules
18from os import sep
19from os.path import dirname, basename
20from os import mkdir, access, F_OK
21from shutil import copy
22import time
23import sys
24
25# Related major packages
26from anuga.shallow_water import Domain
27#from anuga.shallow_water import Dirichlet_boundary
28#from anuga.shallow_water import File_boundary
29#from anuga.shallow_water import Reflective_boundary
30from anuga.shallow_water.data_manager import convert_dem_from_ascii2netcdf, dem2pts
31#from anuga.pmesh.mesh_interface import create_mesh_from_regions
32from anuga.geospatial_data.geospatial_data import *
33from anuga.shallow_water.data_manager import start_screen_catcher, copy_code_files
34
35# Application specific imports
36import project   # Definition of file names and polygons
37
38#------------------------------------------------------------------------------
39# Copy scripts to time stamped output directory and capture screen
40# output to file
41#------------------------------------------------------------------------------
42
43copy_code_files(project.output_build_time_dir,__file__, 
44               dirname(project.__file__)+sep+ project.__name__+'.py' )
45
46start_screen_catcher(project.output_build_time_dir)
47
48print 'USER:    ', project.user
49
50#-------------------------------------------------------------------------------
51# Preparation of topographic data
52#
53# Convert ASC 2 DEM 2 PTS using source data and store result in source data
54# Do for coarse and fine data
55# Fine pts file to be clipped to area of interest
56#-------------------------------------------------------------------------------
57print"project.poly_all",project.poly_all
58print"project.combined_dir_name",project.combined_dir_name
59
60# topography directory filenames
61onshore_in_dir_name = project.onshore_in_dir_name
62coast_in_dir_name = project.coast_in_dir_name
63island_in_dir_name = project.island_in_dir_name
64island_in_dir_name1 = project.island_in_dir_name1
65island_in_dir_name2 = project.island_in_dir_name2
66island_in_dir_name3 = project.island_in_dir_name3
67offshore_in_dir_name = project.offshore_in_dir_name
68
69
70onshore_dir_name = project.onshore_dir_name
71coast_dir_name = project.coast_dir_name
72island_dir_name = project.island_dir_name
73island_dir_name1 = project.island_dir_name1
74island_dir_name2 = project.island_dir_name2
75island_dir_name3 = project.island_dir_name3
76offshore_dir_name = project.offshore_dir_name
77
78# creates DEM from asc data
79print "creates DEMs from asc data"
80convert_dem_from_ascii2netcdf(onshore_in_dir_name, basename_out=onshore_dir_name, use_cache=True, verbose=True)
81convert_dem_from_ascii2netcdf(island_in_dir_name, basename_out=island_dir_name, use_cache=True, verbose=True)
82convert_dem_from_ascii2netcdf(island_in_dir_name1, basename_out=island_dir_name1, use_cache=True, verbose=True)
83convert_dem_from_ascii2netcdf(island_in_dir_name2, basename_out=island_dir_name2, use_cache=True, verbose=True)
84convert_dem_from_ascii2netcdf(island_in_dir_name3, basename_out=island_dir_name3, use_cache=True, verbose=True)
85
86#creates pts file for onshore DEM
87print "creates pts file for onshore DEM"
88dem2pts(onshore_dir_name,
89#        easting_min=project.eastingmin,
90#        easting_max=project.eastingmax,
91#        northing_min=project.northingmin,
92#        northing_max= project.northingmax,
93        use_cache=True, 
94        verbose=True)
95
96#creates pts file for island DEM
97dem2pts(island_dir_name, use_cache=True, verbose=True)
98dem2pts(island_dir_name1, use_cache=True, verbose=True)
99dem2pts(island_dir_name2, use_cache=True, verbose=True)
100dem2pts(island_dir_name3, use_cache=True, verbose=True)
101
102print'create Geospatial data1 objects from topographies'
103G1 = Geospatial_data(file_name = onshore_dir_name + '.pts')
104print'create Geospatial data2 objects from topographies'
105G2 = Geospatial_data(file_name = coast_in_dir_name + '.txt')
106print'create Geospatial data3 objects from topographies'
107G3 = Geospatial_data(file_name = island_dir_name + '.pts')
108print'create Geospatial data4 objects from topographies'
109G4 = Geospatial_data(file_name = island_dir_name1 + '.pts')
110print'create Geospatial data5 objects from topographies'
111G5 = Geospatial_data(file_name = island_dir_name2 + '.pts')
112print'create Geospatial data6 objects from topographies'
113G6 = Geospatial_data(file_name = island_dir_name3 + '.pts')
114print'create Geospatial data7 objects from topographies'
115G_off = Geospatial_data(file_name = offshore_in_dir_name + '.txt')
116
117
118print'add all geospatial objects'
119G = G1 + G2 + G3 + G4 + G5 + G6 + G_off + G_off1
120
121print'clip combined geospatial object by bounding polygon'
122G_clipped = G.clip(project.bounding_polygon)
123#FIXME: add a clip function to pts
124#print'shape of clipped data', G_clipped.get_data_points().shape
125
126print'export combined DEM file'
127if access(project.topographies_dir,F_OK) == 0:
128    mkdir (project.topographies_dir)
129G_clipped.export_points_file(project.combined_dir_name + '.pts')
130#G_clipped.export_points_file(project.combined_dir_name + '.xya')
131
132'''
133print'project.combined_dir_name + 1.xya',project.combined_dir_name + '1.xya'
134G_all=Geospatial_data(file_name = project.combined_dir_name + '1.xya')
135print'split'
136G_all_1, G_all_2 = G_all.split(.10)
137print'export 1'
138G_all_1.export_points_file(project.combined_dir_name+'_small1' + '.xya')
139print'export 2'
140G_all_2.export_points_file(project.combined_dir_name+'_other1' + '.xya')
141
142
143#-------------------------------------------------------------------------
144# Convert URS to SWW file for boundary conditions
145#-------------------------------------------------------------------------
146print 'starting to create boundary conditions'
147boundaries_in_dir_name = project.boundaries_in_dir_name
148
149from anuga.shallow_water.data_manager import urs2sww
150
151print 'minlat=project.north_boundary, maxlat=project.south_boundary',project.north_boundary, project.south_boundary
152print 'minlon= project.west_boundary, maxlon=project.east_boundary',project.west_boundary, project.east_boundary
153
154#import sys; sys.exit()
155
156#if access(project.boundaries_dir,F_OK) == 0:
157#    mkdir (project.boundaries_dir)
158
159from caching import cache
160cache(urs2sww,
161      (boundaries_in_dir_name,
162       project.boundaries_dir_name1),
163      {'verbose': True,
164       'minlat': project.south_boundary,
165       'maxlat': project.north_boundary,
166       'minlon': project.west_boundary,
167       'maxlon': project.east_boundary,
168#       'minlat': project.south,
169#       'maxlat': project.north,
170#       'minlon': project.west,
171#       'maxlon': project.east,
172       'mint': 0, 'maxt': 40000,
173#       'origin': domain.geo_reference.get_origin(),
174       'mean_stage': project.tide,
175#       'zscale': 1,                 #Enhance tsunami
176       'fail_on_NaN': False},
177       verbose = True,
178       )
179#       dependencies = source_dir + project.boundary_basename + '.sww')
180
181'''
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